Versatile Transformation System That Is Applicable to both Multiple Transgene Expression and Gene Targeting for Thraustochytrids
Author(s) -
Keishi Sakaguchi,
Takanori Matsuda,
T Kobayashi,
Jun-ichiro Ohara,
Rie Hamaguchi,
Eriko Abe,
Naoki Nagano,
Masahiro Hayashi,
Mayumi Ueda,
Daiske Honda,
Yuji Okita,
Yousuke Taoka,
Shinichi Sugimoto,
Nozomu Okino,
Makoto Ito
Publication year - 2012
Publication title -
applied and environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.552
H-Index - 324
eISSN - 1070-6291
pISSN - 0099-2240
DOI - 10.1128/aem.07129-11
Subject(s) - selectable marker , transformation (genetics) , biology , homologous recombination , terminator (solar) , gene , fatty acid desaturase , transgene , biochemistry , polyunsaturated fatty acid , dna , microbiology and biotechnology , fatty acid , ionosphere , physics , astronomy
A versatile transformation system for thraustochytrids, a promising producer for polyunsaturated fatty acids and fatty acid-derived fuels, was established. G418, hygromycin B, blasticidin, and zeocin inhibited the growth of thraustochytrids, indicating that multiple selectable marker genes could be used in the transformation system. A neomycin resistance gene (neo r ), driven with an ubiquitin or an EF-1α promoter-terminator fromThraustochytrium aureum ATCC 34304, was introduced into representatives of two thraustochytrid genera,Aurantiochytrium andThraustochytrium . Theneo r marker was integrated into the chromosomal DNA by random recombination and then functionally translated intoneo r mRNA. Additionally, we confirmed that another two genera,Parietichytrium andSchizochytrium , could be transformed by the same method. By this method, the enhanced green fluorescent protein was functionally expressed in thraustochytrids. Meanwhile,T. aureum ATCC 34304 could be transformed by two 18S ribosomal DNA-targeting vectors, designed to cause single- or double-crossover homologous recombination. Finally, the fatty acid Δ5 desaturase gene was disrupted by double-crossover homologous recombination inT. aureum ATCC 34304, resulting in an increase of dihomo-γ-linolenic acid (C20:3n-6 ) and eicosatetraenoic acid (C20:4n-3 ), substrates for Δ5 desaturase, and a decrease of arachidonic acid (C20:4n-6 ) and eicosapentaenoic acid (C20:5n-3 ), products for the enzyme. These results clearly indicate that a versatile transformation system which could be applicable to both multiple transgene expression and gene targeting was established for thraustochytrids.
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